Magnetic anisotropy in (110) epitaxial DyFe2 Laves phase.
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- Type
- article
- Published
- 1996-12-15
- Cited by
- 30
- References
- 0
- OpenAlex
- https://openalex.org/W1976462712
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37263034
Keywords
Epitaxy, Magnetization, Materials science, Condensed matter physics, Diffraction
References
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Cited by
- Etude des propriétés magnétiques de multicouches Fe/Dy par simulations numériques Monte Carlo
- Magnetic anisotropy in multilayers
- Negative coercivity in epitaxially grown (110) DyFe2/YFe2 superlattices
- Room temperature coercivities of Tb1−xDyxFe2 (110) molecular beam epitaxy grown films
- 89Y NMR Studies of MBE Grown DyFe2/YFe2 Multilayer Films
- Magnetic and magnetoelastic properties of epitaxial (2 1 1)-oriented RFe2 (R=Dy, Tb) thin films
- Effects of heteroepitaxial strain on Laves phases TbFe2 and DyFe2
- Engineering coercivity in epitaxially grown (110) films of DyFe~2-YFe~2 superlattices
- Spin configurations and negative coercivity in epitaxially grown DyFe2/YFe2 superlattices
- Magnetic properties of epitaxial (110) multilayer films of DyFe2 and YFe2
- Magnetic anisotropy induced by patterning in (110) MBE-grown ternary Laves phase TbDyFe2 films
- Processes of the inhomogeneous magnetization reversal of cubic ferromagnets with defects
- Patterning effects on magnetic reversal properties in epitaxial-grown Laves phase DyFe2/YFe2 superlattice
- Anisotropic magneto-resistance in an epitaxial (1 1 0) DyFe2 film: a meta-stable magnetic state at 100 K
- Influence of epitaxial strain on the magnetic properties of (110) SmFe2 thin film
- Exchange springs in YFe2 dominated DyFe2–YFe2 superlattices
- Effect of exchange springs on the coercivity of DyFe2-YFe2 superlattices
- Engineering coercivity in YFe2 dominated DyFe2/YFe2 superlattice by patterning
- Neutron reflectometry studies of exchange springs in DyFe2/YFe2 superlattices
- Rotationally invariant theory of magnetoacoustic wave attenuation in cubic ferromagnets
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